Biomedical Engineering Reference
In-Depth Information
17. Evans G. P., Behiri J. C., Currey J. D., Bonfield W. Microhardness and young
modulus in cortical bone exhibiting a wide-range of mineral volume fractions,
and in a bone analog. Journal of Materials Science—Materials in Medicine 1 (1):
38-43 (1990).
18. Riches P. E., Everitt N. M., Heggie A. R., McNally D. S. Microhardness anisot-
ropy of lamellar bone. Journal of Biomechanics 30 (10): 1059-1061 (1997).
19. Mahoney E., Holt A., Swain M., Kilpatrick N. The hardness and modulus of
elasticity of primary molar teeth: An ultra-micro-indentation study. Journal of
Dentistry 28 (8): 589-594 (2000).
20. Aschero G., Gizdulich P., Mango F. Statistical characterization of piezoelectric
coefficient d(23) in cow bone. Journal of Biomechanics 32 (6): 573-577 (1999).
21. Kalinin S. V., Rodriguez B. J., Jesse S., Thundat T., Gruverman A. Electromechanical
imaging of biological systems with sub-10 nm resolution. Applied Physics Letters
87 (5): 053901 (2005).
22. Minary-Jolandan M., Yu M. F. Nanoscale characterization of isolated individual
type I collagen fibrils: Polarization and piezoelectricity. Nanotechnology 20 (8):
085706 (2009).
23. Fu D. H., Hou Z. D., Qin Q. H., Xu L., Zeng Y. J. Influence of shear stress on
behaviors of piezoelectric voltages in bone. Journal of Applied Biomechanics
(in press) (2012).
24. An Y. H., Draughn R. A. Mechanical testing of bone and the bone-implant interface.
Boca Raton, FL: CRC Press (2000).
25. Xu H. H. K., Smith D. T., Jahanmir S., Romberg E., Kelly J. R., Thompson V. P.,
Rekow E. D. Indentation damage and mechanical properties of human enamel
and dentin. Journal of Dental Research 77 (3): 472-480 (1998).
26. Everitt N. M., Rajah S., McNally. D. S. Bone recovery following indentation.
Journal of Bone Joint Surgery, British vol. 88-B: 398 (2006).
27. Fan Z. F, Rho J. Y. Effects of viscoelasticity and time-dependent plasticity on
nanoindentation measurements of human cortical bone. Journal of Biomedical
Materials Research Part A 67A (1): 208-214 (2003).
28. Ramrakhiani M., Pal D., Murty T. S. Micro-indentation hardness studies on
human bones. Acta Anatomica 103 (3): 358-362 (1979).
29. Singh S., Saha S. Electrical properties of bone—A review. Clinical Orthopaedics
and Related Research 186: 249-271 (1984).
30. Johnson M. W., Chakkalakal D. A., Harper R. A., Katz J. L. Comparison of the
electro-mechanical effects in wet and dry bone. Journal of Biomechanics 13 (5):
437-442 (1980).
31. Fu D. H., Hou Z. D., Qin Q. H., Jiang X. G. Analysis of the waveforms of piezo-
electric voltage of bone. Journal of Tianjin University, Science and Technology
39 (SUPPL.): 349-353 (2006).
32. Yamashita J., Li X. O., Furman B. R., Rawls H. R., Wang X. D., Agrawal C. M.
Collagen and bone viscoelasticity: A dynamic mechanical analysis. Journal of
Biomedical Materials Research 63 (1): 31-36 (2002).
33. Fondrk M., Bahniuk E., Davy D. T., Michaels C. Some visco-plastic characteristics
of bovine and human cortical bone. Journal of Biomechanics 21  (8): 623-630
(1988).
34. Hoc T., Henry L., Verdier M., Aubry D., Sedel L., Meunier A. Effect of micro-
structure on the mechanical properties of Haversian cortical bone. Bone 38 (4):
466-474 (2006).
Search WWH ::




Custom Search